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February 9, 2026Developmental Cell0 citationsOpen Access

Bmp9 regulates Notch signaling and the temporal dynamics of angiogenesis via Lunatic Fringe

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TRTommaso RistoriRTRaphaël ThuretEHErika Hooker

Key Points

  • To investigate the role of Bmp9 in regulating Notch signaling and its effects on angiogenesis.
  • Computational modeling applied to mouse, zebrafish, and human cell lines
  • Validation of findings through experimental observations in multiple models
  • Analysis of endothelial and pericyte interactions during angiogenesis
  • Bmp9 enhances Notch activity by upregulating Lunatic Fringe in endothelial cells
  • Lunatic Fringe boosts Notch receptor activation, especially in presence of Delta-like ligand 4
  • Bmp9-Lunatic Fringe interplay modifies EC phenotype selection during angiogenesis
  • Lunatic Fringe facilitates pericyte-driven stabilization of blood vessels through Jagged1 upregulation

Abstract

Sprouting angiogenesis and blood vessel stabilization require precise coordination between endothelial cells (ECs) and pericytes. Bone Morphogenic Protein 9 (Bmp9), whose signaling through activin receptor-like kinase 1 (Alk1) is dysregulated in several diseases, was thought to regulate these processes by independently activating Notch target genes in an additive fashion with canonical Notch signaling. Here, through predictive computational modeling validated in mice, zebrafish, and human cell lines, we uncover that Bmp9 enhances Notch activity synergistically by upregulating Lunatic Fringe (Lfng) in ECs. Specifically, Bmp9-induced Lfng enhances Notch receptor activation, most strongly when Delta-like ligand 4 (Dll4) is also present. This Lfng regulation alters vessel branching by modulating the timing of EC phenotype selection and rearrangement during angiogenesis. Lfng also contributes to pericyte-driven vessel stabilization by mediating Jagged1 upregulation in Bmp9-stimulated ECs. In summary, Bmp9-upregulated Lfng enhances Dll4-Notch1 signaling in ECs and Jag1-Notch3 activation in pericytes, shaping angiogenic sprouting and stabilization outcomes.

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Cite This Study

Ristori et al. (2026) studied this question.

synapsesocial.com/papers/69897983f0ec2af6756e7335https://doi.org/10.1016/j.devcel.2026.01.006
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